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Evaluation of diffusive gradients in thin-films using a Diphonix® resin for monitoring dissolved uranium in natural waters

机译:使用Diphonix®树脂评估薄膜中的扩散梯度,以监测天然水中的溶解铀

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摘要

Commercially available Diphonix® resin (TrisKem International) was evaluated as a receiving phase for use with the diffusive gradients in thin-films (DGT) passive sampler for measuring uranium. This resin has a high partition coefficient for actinides and is used in the nuclear industry. Other resins used as receiving phases with DGT for measuring uranium have been prone to saturation and significant chemical interferences. The performance of the device was evaluated in the laboratory and in field trials. In laboratory experiments uptake of uranium (all 100% efficiency) by the resin was unaffected by varying pH (4–9), ionic strength (0.01–1.00 M, as NaNO3) and varying aqueous concentrations of Ca2+ (100–500 mg L−1) and HCO3− (100–500 mg L−1). Due to the high partition coefficient of Diphonex®, several elution techniques for uranium were evaluated. The optimal eluent mixture was 1 M NaOH/1 M H2O2, eluting 90% of the uranium from the resin. Uptake of uranium was linear (R2 = 0.99) over time (5 days) in laboratory experiments using artificial freshwater showing no saturation effects of the resin. In field deployments (River Lambourn, UK) the devices quantitatively accumulated uranium for up to 7 days. In both studies uptake of uranium matched that theoretically predicted for the DGT. Similar experiments in seawater did not follow the DGT theoretical uptake and the Diphonix® appeared to be capacity limited and also affected by matrix interferences. Isotopes of uranium (U235/U238) were measured in both environments with a precision and accuracy of 1.6–2.2% and 1.2–1.4%, respectively. This initial study shows the potential of using Diphonix®-DGT for monitoring of uranium in the aquatic environment.
机译:将可商购获得的Diphonix®树脂(TrisKem国际公司)作为接收阶段进行了评估,该阶段与薄膜(DGT)中的扩散梯度无源采样器一起用于测量铀。该树脂对act系元素具有高分配系数,并用于核工业。与DGT一起用作接收相以测量铀的其他树脂很容易发生饱和和明显的化学干扰。在实验室和现场试验中评估了该设备的性能。在实验室实验中,树脂的铀吸收(全部100%效率)不受pH值(4–9),离子强度(0.01–1.00 M,如NaNO3)和Ca2 +水溶液浓度(100–500 mg L−)的影响。 1)和HCO3-(100-500 mg L-1)。由于Diphonex®的高分配系数,因此评估了几种铀的洗脱技术。最佳的洗脱液混合物是1 M NaOH / 1 M H2O2,从树脂中洗脱了90%的铀。在使用人造淡水的实验室实验中,铀的吸收随时间(5天)呈线性变化(R2 = 0.99),显示没有树脂的饱和作用。在现场部署中(英国拉姆伯恩河),这些设备最多可定量沉积铀达7天。在两项研究中,铀的吸收均与DGT的理论预测相符。海水中的类似实验并未遵循DGT的理论吸收,并且Diphonix®似乎受容量限制,并且还受到基质干扰的影响。在两种环境中,铀的同位素(U235 / U238)的测量精度和准确度分别为1.6-2.2%和1.2-1.4%。这项初步研究显示了使用Diphonix®-DGT监测水生环境中铀的潜力。

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